期刊文献+

微粒捕集器炭烟加载和再生特性仿真分析 被引量:4

Simulation and Analysis of DPF Soot Loading and Regeneration Characteristics
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摘要 利用AVLFire三维仿真软件建立GW4D20轿车柴油机微粒捕集器(DPF)模型,对DPF炭烟加载过程以及DPF再生过程的炭烟燃烧情况和载体温度分布进行了仿真计算,经过理论和仿真分析得出:在载体内部炭烟加载顺序为从后向前堆积,壁面中的积累顺序是从壁面内部向炭烟层本身堆积;DPF再生过程中炭烟的氧化顺序则是从前向后,且温度峰值从前至后依次增大,最大温度点的位置是靠近载体出口的中心位置。 The model of diesel particulate filter (DPF) for GW4D20 car was built with the three-dimensional simulation soft-ware AVLFire .With the model ,the soot combustion and carrier temperature distribution during the soot loading and regenera-tion process were simulated .The theoretical analysis and simulation results show that the soot stacks sequentially from back to front inside the carrier and from inside to the soot layer in the wall .In the regeneration process of DPF ,the soot oxidizes from front to back ,the peak temperature increases from front to back and its location is near the center of carrier outlet .
出处 《车用发动机》 北大核心 2014年第3期55-58,65,共5页 Vehicle Engine
基金 国家"863"计划项目"高压共轨轿车柴油机开发"(2012AA111704)
关键词 微粒捕集器 炭烟 温度分布 仿真 再生 DPF soot temperature distribution simulation regeneration
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参考文献5

  • 1张辉.轿车柴油机微粒捕集器工作过程数值模拟及再生控制策略研究[D].长春:吉林大学,2011.
  • 2秦岩,李君,刘宇,屈伟,王庆党,吴超.GW4D20轿车柴油机微粒捕集器内部气流运动分析[J].车用发动机,2013(2):40-43. 被引量:1
  • 3Evdoxia A,Kladopoulou.A Study Describing the Per-formanee of Diesel Particulate Filters During Loading and Regeneration-A Lumped Parameter Model for Control Applications [C].SAE Paper 2003-01-0842.
  • 4Shigeki Daido.Visualization of the PM Deposition and Oxidation Behavior Inside the DPF Wall [C].SAE Pa-per 2009-01-1473.
  • 5Alessandro Cozzolini.Advanced Modeling of Diesel P-articulate Filters to Predict Soot Accumulation and Pressure Drop [C].SAE Paper 2011-24-0187.

二级参考文献5

  • 1Yong Yi, Simulating the Soot Loading in Wall-flow DPF Using a Three-Dimensional Macroscopic Model [-C. SAE Paper 2006-01-0264.
  • 2张辉.轿车柴油机微粒捕集器工作过程数值模拟及再生控制策略研究[D].长春:吉林大学,2011.
  • 3James W Girard,Figen Lacin,Charles J ,et al. Flow U- niformity Optimization for Diesel Aftertreatment Sys- tems EC.SAE Paper 2006-01-1092.
  • 4刘大文.柴油机微粒捕集器流场均匀性试验及仿真研究[D].长春:吉林大学,2011.
  • 5Yasuharu Kanno, Yasushi Tanaka, Yasuyuki Banno, et al. Study of DOC+ CSF Optimization [C]. SAE Paper 2006-01-3285.

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